首页> 外文会议>Nano/Micro Engineered and Molecular Systems, 2009. NEMS 2009 >Enhancement of mixing performance of water solutions in a micro-mixer with immiscible ferrofluid
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Enhancement of mixing performance of water solutions in a micro-mixer with immiscible ferrofluid

机译:在不混溶的铁磁流体的微型混合器中提高水溶液的混合性能

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The purpose of this study is to develop a novel semi-active micro-mixer. The developed mixer has neither obstacles in microchannels or external electrical power sources outside the microchannel. However, an oil-base ferro-nanofluid is employed to segment two aqueous solutions into droplets when two aqueous solutions interact with the oil-based ferro-nanofluid at a dragonfly shape junction. The mixing between two aqueous solutions in the droplet can be significantly enhanced when the ferro-nanofluid carrying the droplets flow through a permanent magnet outside the microchannel. It is due to the reason that boundaries between the droplets and the oil-based ferro-nanofluid are distorted when the carrier ferro-nanofluid moves into and out of the magnetic field exerted by the permanent magnet. Since no external electrical power is required in the developed micromixer for enhancing the mixing between two aqueous solutions. This type of micro-mixer is called a ldquoSemi-Active Micromixerrdquo.
机译:这项研究的目的是开发一种新型的半主动式微混合器。开发的混合器在微通道中没有障碍,在微通道外部也没有外部电源。然而,当两种水溶液在蜻蜓形状的交界处与油基的铁纳米流体相互作用时,采用油基的铁纳米流体将两种水溶液分割成液滴。当携带液滴的铁纳米流体流过微通道外部的永磁体时,可以显着增强液滴中两种水溶液之间的混合。这是由于当载体铁纳米流体移入和移出由永磁体施加的磁场时,液滴和油基铁纳米流体之间的边界变形的原因。由于在开发的微混合器中不需要外部电源来增强两种水溶液之间的混合。这种类型的微型混合器称为“半主动微型混合器”。

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